M37903S4CHP RENESAS | Alldatasheet
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Regarding the change of names mentioned in the document, such as Mitsubishi Electric and Mitsubishi XX, to Renesas Technology Corp. The semiconductor operations of Hitachi and Mitsubishi Electric were transferred to Renesas Technology Corporation on April 1st 2003. These operations include microcomputer, logic, analog and discrete devices, and memory chips other than DRAMs (flash memory, SRAMs etc.) Accordingly, although Mitsubishi Electric, Mitsubishi Electric Corporation, Mitsubishi Semiconductors, and other Mitsubishi brand names are mentioned in the document, these names have in fact all been changed to Renesas Technology Corp. Thank you for your understanding. Except for our corporate trademark, logo and corporate statement, no changes whatsoever have been made to the contents of the document, and these changes do not constitute any alteration to the contents of the document itself. Note : Mitsubishi Electric will continue the business operations of high frequency & optical devices and power devices. Renesas Technology Corp. Customer Support Dept. April 1, 2003 To all our customers
Y Notice: This is not a final specification. Some parametric limits are subject to change. 16-BIT CMOS MICROCOMPUTER MITSUBISHI MICROCOMPUTERS
DESCRIPTION
These are microcomputers designed with high-performance CMOS silicon gate technology. These microcomputers support the 7900 Series instruction set, which is enhanced and expanded instruction set and is upper-compatible with the 7700/7751 Series instruction set. The CPU of these microcomputers is a 16-bit parallel processor that can also be switched to perform 8-bit parallel processing. Also, the bus interface unit of these microcomputers enhances the memory access efficiency to execute instructions fast. Therefore, these mi- crocomputers are suitable for office, business, and industrial equip- ment controller that require high-speed processing of large data. DISTINCTIVE FEATURES <Microcomputer mode>
- Memory
- Instruction execution time
- Real-time output .... 4 bits × 2 channels, or 6 bits × 1 channel + 2 bits × 1 channel
- 12-bit watchdog timer APPLICATION Control devices for personal computer peripheral equipment such as CD-ROM drives, DVD-ROM drives, hard disk drives, high density FDD, printers Control devices for office equipment such as copiers and facsimiles Control devices for industrial equipment such as communication and measuring instruments M37903S4CHP PIN CONFIGURATION (TOP VIEW) Outline 100P6Q-A P64/INT2 ↔ P63/INT1 ↔ P62/INT0 ↔ P61/TA4IN ↔ P60/TA4OUT ↔ P55/TA2IN/RTP11/KI1 ↔ P54/TA2OUT /RTP10/KI0 ↔ P53/TA1IN/RTP03 ↔ P52/TA1OUT /RTP02 ↔ P51/TA0IN/RTP01 ↔ P50/TA0OUT /RTP00 ↔ P47/CS3 ↔ P46/CS2 ↔ P45/CS1 ↔ P44/CS0 ← P43/HOLD ↔ P40/ALE ↔ 100 P42/HLDA ↔ P41/φ1 ↔ P65/TB0IN ↔ P66/TB1IN ↔ P67/TB2IN ↔ P70/AN0 ↔ ↔ P30/RDY ↔ P31/RD ↔ P32/BLW ↔ P33/BHW ← BYTE ← CDSEL ← RESET ← MD0 VSS ↔ P25/D13 ↔ P24/D12 ↔ P26/D14 ← XIN → XOUT VCC ↔ P27/D15 ↔ P23/D11 ↔ P22/D10 ↔ P21/D9 ↔ P20/D8 ↔ P17/D7/LA7 ↔ P16/D6/LA6 ↔ P15/D5/LA5 ↔ P10/D0/LA0 ↔ P11/D1/LA1 ↔ P12/D2/LA2 VSS → P105/A5 → P104/A4 → P107/A7 → P106/A6 ↔ P110/A8 ↔ P112/A10 ↔ P111/A9 ↔ P113/A11 ↔ P115/A13 ↔ P114/A12 ↔ P116/A14 ↔ P00/A16 ↔ P117/A15 ↔ P01/A17 ↔ P02/A18 ↔ P04/A20 ↔ P03/A19 ↔ P05/A21 ↔ P07/A23 ← MD1 ↔ P06/A22 ↔ P14/D4/LA4 ↔ P13/D3/LA3 P100/A0 ← P87/TXD 1 ↔ P86/RXD 1 ↔ P85/CTS1/CLK1 ↔ P84/CTS1/RTS1/INT4 ↔ P83/TXD 0 ↔ P103/A3 ← P102/A2 ← P101/A1 ← P82/RXD 0 ↔ VCC AV CC VREF → AV SS VSS P77/AN7/ADTRG /DA1/(INT2) ↔ P76/AN6/DA0 ↔ P75/AN5/(INT4) ↔ P74/AN4/(INT3) ↔ P73/AN3 ↔ P72/AN2 ↔ P71/AN1 ↔ P80/CTS0/RTS0/INT3 ↔ NMI → P81/CTS0/CLK0 ↔ M37903S4CHP P57/TA3IN/RTP13/KI3 ↔ P56/TA3OUT /RTP12/KI2 ↔
Y Notice: This is not a final specification. Some parametric limits are subject to change. 16-BIT CMOS MICROCOMPUTER MITSUBISHI MICROCOMPUTERS BLOCK DIAGRAM Data bank Register DT (8) Program Counter PC (16) Incrementer/Decrementer (24) Program Bank Register PG (8) Input Buffer Register IB (16) Direct Page Register DPR0 (16) Stack Pointer S (16) Index Register Y (16) Index Register X (16) Arithmetic Logic Unit (16) Accumulator B (16) Accumulator A (16) Instruction register (8) Central Processing Unit (CPU) Incrementer (24) Program Address Register PA (24) Data Address Register DA (24) Bus Interface Unit(BIU) RESET MD1 Reference voltage input V REF (0V)AV SS AVcc Vcc External data bus width select input BYTE Clock Generating Circuit Clock input X IN CDSEL X OUT Data Buffer DQ0 (8) Instruction Queue Buffer Q0 (8) Data Bus (Odd) Address Bus A-D converter (10) UART1 (9)UART0 (9) Watchdog timerTimer TB1 (16)Timer TB2 (16)Timer TB0 (16) D-A 1 converter (8) Timer TA1 (16)Timer TA2 (16)Timer TA3 (16)Timer TA4 (16)Timer TA0 (16) RAM 2048 bytes MD0 (0V)Vss Processor Status Register PS (11) NMI D-A 0 converter (8) Data Bus (Even) Data Buffer DQ1 (8) Data Buffer DQ2 (8) Data Buffer DQ3 (8) Instruction Queue Buffer Q1 (8) Instruction Queue Buffer Q2 (8) Instruction Queue Buffer Q3 (8) Instruction Queue Buffer Q4 (8) Instruction Queue Buffer Q5 (8) Instruction Queue Buffer Q6 (8) Instruction Queue Buffer Q7 (8) Instruction Queue Buffer Q8 (8) Instruction Queue Buffer Q9 (8) Direct Page Register DPR1 (16) Direct Page Register DPR2 (16) Direct Page Register DPR3 (16) Clock output Reset input RD Read output BLW Write output CS CS 0 output P8(8) Input/Output port P8 P7(8) Input/Output port P7 Input/Output port P4P4(7) Address bus/Input/Output ports P0, P11 P6(8) Input/Output port P6 P5(8) Input/Output port P5 Low-order data (8) Data bus P3(2) Input/Output port P3 Low-order address (8) Address bus Middle-order address (8) Data bus/Input/Output port P2 /P11(8) High-order address (8)/P0(8) High-order Data (8)/P2(8) (Note 1) (Note 2) Notes 1: When the external data bus width = 16 bits, this serves as the data bus; when the external data bus width = 8 bits, this serve s as the I/O port. According to the register setting, this can serve as the I/O port. (0V) (5V)
Y Notice: This is not a final specification. Some parametric limits are subject to change. 16-BIT CMOS MICROCOMPUTER MITSUBISHI MICROCOMPUTERS FUNCTIONS (Microcomputer mode) FunctionsParameter Number of basic machine instructions Instruction execution time External clock input frequency f(X IN) System clock frequency f(fsys) Memory size Programmable input/output ports Multi-functional timers Serial I/O A-D converter D-A converter Watchdog timer Chip-select wait control Real-time output Interrupts Clock generating circuit Input/Output withstand voltage Output current ROM RAM P0, P2, P5–P8, P11 TA0–TA4 TB0 –TB2 UART0 and UART1 Power supply voltage Power dissipation Ports’ input/output characteristics Memory expansion Operating ambient temperature range Device structure Package Maskable interrups Non-maskable interrups 203 38 ns (the fastest instruction at f(fsys) = 26 MHz) 26 MHz (Max.) (Note) 26 MHz (Max.) External 2048 bytes 8-bit ✕ 7 (Max.) 2-bit ✕ 1 (Max.) 7-bit ✕ 1 (Max.) 16-bit ✕ 5 16-bit ✕ 3 (UART or Clock synchronous serial I/O) ✕ 2 10-bit successive approximation method ✕ 1 (8 channels) 8-bit ✕ 2 12-bit ✕ 1 Chip select area ✕ 4 (CS 0–CS 3). A bus cycle type and bus width can be set for each chip select area. 4 bits ✕ 2 channels; or 6 bits ✕ 1 channel + 2 bits ✕ 1 channel 5 external types, 13 internal types. Each interrupt can be set to a priority level within the range of 0–7 by software. 1 external type, 2 internal types. Built-in (externally connected to a ceramic resonator or quartz crystal resonator). 5 V±0.5 V 150 mW (at f(f sys) = 26 MHz, Typ.) 5 V 5 mA Up to 16 Mbytes. Note that bank FF 16 is a reserved area. –20 to 85 °C CMOS high-performance silicon gate process 100-pin plastic molded QFP Note: When the XIN-input-clock division select bit = “0”, the maximum value = 52 MHz.
Y Notice: This is not a final specification. Some parametric limits are subject to change. 16-BIT CMOS MICROCOMPUTER MITSUBISHI MICROCOMPUTERS Note: The XIN-input-clock division select bit is used to determine whether the input clock to pin XIN is to be divided or not. Vcc, Vss MD0 MD1 RESET X IN XOUT BYTE CDSEL AVcc, AVss VREF P00/A16– P07/A23 P10/D0– P17/D7 P20/D8– P27/D15 P30–P33 P40–P47 P50–P57 P60–P67 P70–P77 P80–P87 P100/A0–P107/A7 P110/A8– P117/A15 NMI Power supply input MD0 MD1 Reset input Clock input Clock output External data bus width select input Clock division select input Analog power supply input Reference voltage input Address (high-order) output Data (low-order) I/O I/O port P2, Data (high-order) I/O I/O port P3 I/O port P4 I/O port P5 I/O port P6 I/O port P7 I/O port P8 Address (low-order) output Address (middle-order) output Non-maskable interrupt Input Input Input Input Output Input Input Input Output I/O I/O I/O I/O I/O I/O I/O I/O Output Output Input Apply 5 V±0.5 V to Vcc, and 0 V to Vss. Connect this pin to V CC . Connect this pin to Vss. The microcomputer is reset when V SS -level voltage is applied to this pin. These are input and output pins of the internal clock generating circuit. Connect a ceramic or quartz- crystal resonator between the XIN and XOUT pins. When an external clock is used, the clock source should be connected to the XIN pin, and the XOUT pin should be left open. This pin determines whether the external data bus has an 8-bit width or 16-bit width for the memory expansion mode or microprocessor mode. The width is 16 bits when V SS -level voltage is input, and 8 bits when VCC -level voltage is applied. When BYTE = Vss level, by the register setting, the external data bus for each of areas CS1 to CS 3 can have a width of 8 bits. This pin determines the XIN-input-clock division select bit’s (Note) state at reset and the input level at pin XIN. Power supply input pins for the A-D converter and the D-A converter. Connect AVcc to Vcc, and AVss to Vss externally. This is the reference voltage input pin for the A-D converter and the D-A converter. Address (A 16–A23) is output. These pins also function as I/O port pins according to the register setting. The low-order 8 bits of data (D 0–D 7) are input/output. When the external data bus has an 8-bit width, address (LA0–LA7) output and data (D0–D 7) input/output can be performed with the time-sharing method, according to the register setting. I When 8-bit external data bus is used Port P2 is an 8-bit I/O port. This port has an I/O direction register, and each pin can be programmed for input or output. These pins enter the input mode at reset. I When 16-bit external data bus is used The high-order 8 bits of data (D 8–D 15) are input or output. P30 functions as an input pin of RDY; and P31,P32, P33 function as the output pins of RD, BLW, BHW, respectively. P30 also functions as an I/O port pin accord- ing to the register setting. When the external data bus has a width of 8 bits, the BHW pin functions as an I/O port pin (P3 3). P40–P44 function as output or input pins of ALE, φ1, HLDA, HOLD, CS0, and P45–P47 as I/O port pins, respectively. According to the register setting, P40–P43 also function as I/O port pins, and P45–P47 as output pins of CS1–CS 3. Port P5 is an 8-bit I/O port. This port has an I/O direction register, and each pin can be programmed for input or output. These pins enter the input mode at reset. These pins also function as I/O pins for timers A0–A3, output pins for the real-time output, and input pins for the key-input interrupt. Port P6 is an 8-bit I/O port. This port has an I/O direction register, and each pin can be programmed for input or output. These pins enter the input mode at reset. These pins also function as I/O pins for timer A4, input pins for external interrupt inputs INT 0–INT2, and input pins for timers B0–B2. Port P7 is an 8-bit I/O port. This port has an I/O direction register, and each pin can be programmed for input or output. These pins enter the input mode at reset. These pins also function as input pins for the A-D converter, output pins for the D-A converter, and input pins for INT 2, INT3, and INT4. Port P8 is an 8-bit I/O port. This port has an I/O direction register, and each pin can be programmed for input or output. These pins enter the input mode at reset. These pins also function as I/O pins for UART0, UART1, and input pins for INT 3 and INT4. Address (A0–A7) is output. Address (A8–A15) is output. Also, these pins function as I/O port pins according to the register setting. This pin is for a non-maskable interrupt. PIN DESCRIPTION (MICROCOMPUTER MODE) FunctionsInput/ OutputNamePin
Y Notice: This is not a final specification. Some parametric limits are subject to change. 16-BIT CMOS MICROCOMPUTER MITSUBISHI MICROCOMPUTERS BASIC FUNCTION BLOCKS The M37903S4CHP has the same function as that of the M37903F8CHP except for the following. Therefore, refer to the datasheet of the M37903F8CHP.
- The memory allocation of the M37903S4CHP differs from that of the M37903F8CHP.
- The M37903S4CHP operates only in the microprocessor mode. MEMORY Figure 1 shows the memory map. The address space is 16 Mbytes from addresses 0 16 to FFFFFF16. The address space is divided into 64-Kbyte units called banks. The banks are numbered from 016 to FF16. Bank FF16 is a reserved area for the development support tool. Therefore, do not use bank FF16. Internal RAM is assigned as shown in Figure 1. Addresses FFC0 16 to FFFF16 contain the RESET and the interrupt vector addresses, and the interrupt vectors are stored there. For these addresses, use the ROM. For details, refer to the section on interrupts. Assigned to addresses 0 16 to FF16 are peripheral devices such as I/O ports, A-D converter, D-A converter, UART, timers, interrupt con- trol registers, etc. Figures 2 and 3 show the location of SFRs. Fig. 1 Memory map of M37903S4CHP INT4 A-D conversion Reserved area Reserved area Reserved area Reserved area Reserved area Reserved area Reserved area Reserved area UART1 transmit UART1 receive UART0 transmit UART0 receive Timer B2 Timer B1 Timer B0 Interrupt vector table Timer A4 Timer A3 Timer A2 Timer A1 Timer A0 Watchdog timer BRK instruction Zero divide INT3 INT2 INT1 INT0 NMI RESET DBC 00000016 Bank 016 FFFFFF 16 FE0000 16 00FFFF 16 01000016 01FFFF 16 Bank FE16 00000016 00080016 0000FF16 00FFFE 16 00FFC0 16 Internal RAM 2048 bytes Peripheral devices control registers 000FFF 16 FEFFFF 16 FF000016 00FFFF 16 00FFC0 16 Bank 116 Bank FF Reserved area for development support tool
Y Notice: This is not a final specification. Some parametric limits are subject to change. 16-BIT CMOS MICROCOMPUTER MITSUBISHI MICROCOMPUTERS Fig. 2 Location of SFRs (1) 00000016 00000116 00000216 00000316 00000416 00000516 00000616 00000716 00000816 00000916 00000A16 00000B16 00000C 16 00000D 16 00000E16 00000F16 00001016 00001116 00001216 00001316 00001416 00001516 00001616 00001716 00001816 00001916 00001A16 00001B16 00001C 16 00001D 16 00001E16 00001F16 00002016 00002116 00002216 00002316 00002416 00002516 00002616 00002716 00002816 00002916 00002A16 00002B16 00002C 16 00002D 16 00002E16 00002F16 00003016 00003116 00003216 00003316 00003416 00003516 00003616 00003716 00003816 00003916 00003A16 00003B16 00003C 16 00003D 16 00003E16 00003F16 Port P2 register Port P3 register Port P1 direction register Port P0 direction register Port P1 register Port P0 register Port P2 direction register Port P3 direction register Port P4 register Port P5 register Port P4 direction register Port P5 direction register Port P6 register Port P7 register Port P6 direction register Port P7 direction register Port P8 register Port P8 direction register Port P10 register Port P11 register Port P10 direction register Port P11 direction register A-D control register 0 A-D control register 1 A-D register 0 A-D register 1 A-D register 2 A-D register 3 A-D register 4 A-D register 5 A-D register 6 A-D register 7 UART0 transmit/receive mode register UART0 baud rate register (BRG0) UART0 transmit buffer register UART0 transmit/receive control register 1 UART0 receive buffer register UART1 transmit/receive mode register UART1 baud rate register (BRG1) UART1 transmit buffer register UART1 transmit/receive control register 0 UART1 transmit/receive control register 1 UART1 receive buffer register Address (Hexadecimal notation) 000040 00004116 00004216 00004316 00004416 00004516 00004616 00004716 00004816 00004916 00004A16 00004B16 00004C 16 00004D 16 00004E16 00004F16 00005016 00005116 00005216 00005316 00005416 00005516 00005616 00005716 00005816 00005916 00005A16 00005B16 00005C 16 00005D 16 00005E16 00005F16 00006016 00006116 00006216 00006316 00006416 00006516 00006616 00006716 00006816 00006916 00006A16 00006B16 00006C 16 00006D 16 00006E16 00006F16 00007016 00007116 00007216 00007316 00007416 00007516 00007616 00007716 00007816 00007916 00007A16 00007B16 00007C 16 00007D 16 00007E16 00007F16 Address (Hexadecimal notation) Count start register One-shot start register Timer A clock division select register Timer A0 register Timer A1 register Timer A2 register Timer A3 register Timer A4 register Timer B0 register Timer B1 register Timer B2 register Timer A1 mode register Timer A0 mode register Timer A2 mode register Timer A3 mode register Timer A4 mode register Timer B0 mode register Timer B1 mode register Timer B2 mode register Processor mode register 1 Watchdog timer register Particular function select register 0 Particular function select register 1 Reserved area (Note) INT 3 interrupt control register UART0 transmit interrupt control register UART1 receive interrupt control register Timer A0 interrupt control register Timer A1 interrupt control register Timer A3 interrupt control register Timer A4 interrupt control register Timer B0 interrupt control register Timer B2 interrupt control register INT 1 interrupt control register Watchdog timer frequency select register Reserved area (Note) INT4 interrupt control register UART1 transmit interrupt control register Timer A2 interrupt control register Timer B1 interrupt control register INT 2 interrupt control register Particular function select register 2 Reserved area (Note) Note: Do not write to this address. UART0 transmit/receive control register 0 Up-down register Processor mode register 0 A-D conversion interrupt control register UART0 receive interrupt control register INT0 interrupt control register
Y Notice: This is not a final specification. Some parametric limits are subject to change. 16-BIT CMOS MICROCOMPUTER MITSUBISHI MICROCOMPUTERS Fig. 3 Location of SFRs (2) 0000C0 16 0000C1 16 0000C2 16 0000C3 16 0000C4 16 0000C5 16 0000C6 16 0000C7 16 0000C8 16 0000C9 16 0000CA 16 0000CB 16 0000CC 16 0000CD 16 0000CE 16 0000CF 16 0000D0 16 0000D1 16 0000D2 16 0000D3 16 0000D4 16 0000D5 16 0000D6 16 0000D7 16 0000D8 16 0000D9 16 0000DA 16 0000DB 16 0000DC 16 0000DD 16 0000DE 16 0000DF 16 0000E016 0000E116 0000E216 0000E316 0000E416 0000E516 0000E616 0000E716 0000E816 0000E916 0000EA 16 0000EB 16 0000EC 16 0000ED 16 0000EE 16 0000EF 16 0000F016 0000F116 0000F216 0000F316 0000F416 0000F516 0000F616 0000F716 0000F816 0000F916 0000FA 16 0000FB 16 0000FC 16 0000FD 16 0000FE 16 0000FF16 0000A016 0000A116 0000A216 0000A316 0000A416 0000A516 0000A616 0000A716 0000A816 0000A916 0000AA 16 0000AB 16 0000AC 16 0000AD 16 0000AE 16 0000AF 16 0000B016 0000B116 0000B216 0000B316 0000B416 0000B516 0000B616 0000B716 0000B816 0000B916 0000BA 16 0000BB 16 0000BC 16 0000BD 16 0000BE 16 0000BF 16 Real-time output control register Pulse output data register 0 Pulse output data register 1 Reserved area (Note) Serial I/O pin control register 000080 00008116 00008216 00008316 00008416 00008516 00008616 00008716 00008816 00008916 00008A16 00008B16 00008C 16 00008D 16 00008E16 00008F16 00009016 00009116 00009216 00009316 00009416 00009516 00009616 00009716 00009816 00009916 00009A16 00009B16 00009C 16 00009D 16 00009E16 00009F16 Address (Hexadecimal notation) CS 0 control register L CS 0 control register H CS 1 control register L CS 1 control register H CS 2 control register L CS 2 control register H CS 3 control register L CS 3 control register H Area CS 0 start address register Area CS 1 start address register Area CS 2 start address register Area CS 3 start address register Reserved area (Note) Reserved area (Note) Port function control register External interrupt input control register External interrupt input read-out register D-A control register D-A register 0 D-A register 1 Reserved area (Note) Note: Do not write to this address. Clock control register Reserved area (Note) Reserved area (Note) Reserved area (Note) Address (Hexadecimal notation) Reserved area (Note) Reserved area (Note) Reserved area (Note)
Y Notice: This is not a final specification. Some parametric limits are subject to change. 16-BIT CMOS MICROCOMPUTER MITSUBISHI MICROCOMPUTERS
ELECTRICAL CHARACTERISTICS
As for the following, the M37903S4CHP is the same as the M37903F8CHP. Therefore, for the following, refer to the datasheet of the M37903F8CHP.
- ABSOLUTE MAXIMUM RATINGS
- RECOMMENDED OPERATING CONDITIONS
- DC ELECTRICAL CHARACTERISTICS
- A-D CONVERTER CHARACTERISTICS
- D-A CONVERTER CHARACTERISTICS
- TIMING REQUIREMENTS
- SWITCHING CHARACTERISTICS
Y Notice: This is not a final specification. Some parametric limits are subject to change. 16-BIT CMOS MICROCOMPUTER MITSUBISHI MICROCOMPUTERS Notes regarding these materials
- These materials are intended as a reference to assist our customers in the selection of the Mitsubishi semiconductor product best suited to the customer’s application; they do not convey any license under any intellectual property rights, or any other rights, belonging to Mitsubishi Electric Corporation or a third party.
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- Please contact Mitsubishi Electric Corporation or an authorized Mitsubishi Semiconductor product distributor for further details on these materials or the products contained therein. © 2000 MITSUBISHI ELECTRIC CORP. New publication, effective Oct., 2000. Specifications subject to change without notice. Keep safety first in your circuit designs!
- Mitsubishi Electric Corporation puts the maximum effort into making semiconductor products better and more reliable, but there is always the possibility that trouble may occur with them. Trouble with semiconductors may lead to personal injury, fire or property damage. Remember to give due consideration to safety when making your circuit designs, with appropriate measures such as (i) placement of substitutive, auxiliary circuits, (ii) use of non-flammable material or (iii) prevention against any malfunction or mishap. PACKAGE OUTLINE LQFP100-P-1414-0.50 W eight(g) JEDEC CodeEIAJ Package Code Lead Material Cu Alloy 100P6Q-A Plastic 100pin 14✕ 14mm bod y LQFP 0.1 0.2 Symbol Min Nom Max A b c D E H E L y Dimension in Millimeters H D 0.225 ––I2 1.0 ––M D 14.4 ––M E 14.4 10°0° 0.1 1.0 0.70.50.3 16.216.015.8 16.216.015.8 0.5 14.114.013.9 14.114.013.9 0.1750.1250.105 0.280.180.13 1.4 1.7 e e e E c H E 5026 H D D M D M E A F b A A L y Recommended Mount Pad Detail F 100
Rev. Rev. No. date
1.0 First Edition 001004
Revision History M37903S4CHP Datasheet (1/1) Revision Description